In an experiment with an Ostwald Viscometer, the times of flow of water and toluene are 45 s and 32.9 s respectively at 30°C. The density of water is 1.002 g/cc. Calculate the density of the toluene in g/ml. (uwater = 0.8916 cP, µtoluene = 0.5239 cP) Use 4 decimal places. * %3D O 0.8853 O 0.8053 O 0.8080 O 0.8882

Fundamentals Of Analytical Chemistry
9th Edition
ISBN:9781285640686
Author:Skoog
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Chapter34: Miscellaneous Separation Methods
Section: Chapter Questions
Problem 34.18QAP
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In an experiment with an Ostwald
Viscometer, the times of flow of
water and toluene are 45 s and
32.9 s respectively at 30°C. The
density of water is 1.002 g/cc.
Calculate the density of the
toluene in g/ml. (µwater = 0.8916
%3D
cP, utoluene = 0.5239 cP) Use 4
decimal places.
0.8853
0.8053
O 0.8080
O 0.8882
Transcribed Image Text:In an experiment with an Ostwald Viscometer, the times of flow of water and toluene are 45 s and 32.9 s respectively at 30°C. The density of water is 1.002 g/cc. Calculate the density of the toluene in g/ml. (µwater = 0.8916 %3D cP, utoluene = 0.5239 cP) Use 4 decimal places. 0.8853 0.8053 O 0.8080 O 0.8882
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